首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Boosting the thermoelectric performance of GeTe by manipulating the phase transition temperature via Sb doping
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Boosting the thermoelectric performance of GeTe by manipulating the phase transition temperature via Sb doping

机译:通过SB掺杂操纵相变温度来提高Gete的热电性能

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It is well known that the thermoelectric performance of GeTe is difficult to manipulate due to its intrinsic overhigh carrier concentration and phase transition. Herein, we demonstrate that the electrical and thermal transport properties of GeTe can be synergistically promoted by lowering the phase transition temperature via doping Sb. A maximum ZT of similar to 1.8 at 773 K and a ZT(ave) of similar to 1.1 at 300-773 K are acquired in a Ge0.9Sb0.1Te sample. The prominently increased performance originates from three functions of the Sb dopant: (1) being an effective counter-dopant to tune the carrier concentration to an optimum range; (2) promoting the crystal symmetry of GeTe to enlarge the band degeneracy while flattening the valence band, thus elevating the density-of-state effective mass from similar to 1.34m(0) to similar to 2.34m(0); (3) introducing mass fluctuation and point defects to intensify phonon scattering, which decreases the lattice thermal conductivity. This work gains deep insights into the influence of Sb doping on electron-phonon transfer in GeTe-based materials, providing a valid strategy for achieving exceptional performance in other thermoelectric materials.
机译:众所周知,由于其固有的过高载流子浓度和相变,GeTe的热电性能很难控制。在此,我们证明了通过掺杂Sb降低相变温度可以协同促进GeTe的电输运和热输运性质。在Ge0中获得了773 K时类似于1.8的最大ZT和300-773 K时类似于1.1的ZT(平均温度)。9Sb0。1.样品。性能的显著提高源于Sb掺杂剂的三个功能:(1)作为有效的反掺杂剂,将载流子浓度调节到最佳范围;(2) 促进了GeTe的晶体对称性,使能带简并度增大,价带变平,从而使态有效质量密度从近似于1.34m(0)提高到近似于2.34m(0);(3) 引入质量涨落和点缺陷来增强声子散射,从而降低晶格热导率。这项工作深入了解了Sb掺杂对GeTe基材料中电子-声子转移的影响,为在其他热电材料中实现优异性能提供了有效策略。

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